Cosmic-ray induced destruction of CO in star-forming galaxies
arXiv:1703.08598 · doi:10.3847/1538-4357/aa696d
Abstract
We explore the effects of the expected higher cosmic ray (CR) ionization rates on the abundances of carbon monoxide (CO), atomic carbon (C), and ionized carbon (C) in the H clouds of star-forming galaxies. The study of Bisbas et al. (2015) is expanded by: a) using realistic inhomogeneous Giant Molecular Cloud (GMC) structures, b) a detailed chemical analysis behind the CR-induced destruction of CO, and c) exploring the thermal state of CR-irradiated molecular gas. CRs permeating the interstellar medium with (Galactic) are found to significantly reduce the [CO]/[H] abundance ratios throughout the mass of a GMC. CO rotational line imaging will then show much clumpier structures than the actual ones. For (Galactic) this bias becomes severe, limiting the utility of CO lines for recovering structural and dynamical characteristics of H-rich galaxies throughout the Universe, including many of the so-called Main Sequence (MS) galaxies where the bulk of cosmic star formation occurs. Both C and C abundances increase with rising , with C remaining the most abundant of the two throughout H clouds, when (Galactic). C starts to dominate for (Galactic). The thermal state of the gas in the inner and denser regions of GMCs is invariant with for (Galactic). For (Galactic) this is no longer the case and are reached. Finally we identify OH as the key species whose sensitive abundance could mitigate the destruction of CO at high temperatures.
17 pages, 12 figures, accepted by ApJ
References in corpus (25)
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- Cold Dark Clouds: The Initial Conditions for Star Formation
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- Combined CO & Dust Scaling Relations of Depletion Time and Molecular Gas Fractions with Cosmic Time, Specific Star Formation Rate and Stellar Mass
- Bulge Formation by the Coalescence of Giant Clumps in Primordial Disk Galaxies
- Herschel Survey of Galactic OH+, H2O+, and H3O+: Probing the Molecular Hydrogen Fraction and Cosmic-Ray Ionization Rate
- HI-to-H2 Transitions and H I Column Densities in Galaxy Star-Forming Regions
- CO-dark gas and molecular filaments in Milky Way type galaxies
- Unstable disks at high redshift: Evidence for smooth accretion in galaxy formation
- Effective destruction of CO by cosmic rays: implications for tracing H gas in the Universe
- ALMA observations of atomic carbon in z~4 dusty star-forming galaxies
- Revealing the physical properties of molecular gas in Orion with a large scale survey in J=2-1 lines of 12CO, 13CO and C18O
- Molecular line intensities as measures of cloud masses - I. Sensitivity of CO emissions to physical parameter variations
- Modelling [CI] emission from turbulent molecular clouds
- Incorporating the molecular gas phase in galaxy-size numerical simulations: first applications in dwarf galaxies
- Molecular gas heating mechanisms, and star formation feedback in merger/s tarbursts: NGC 6240 and Arp 193 as case studies
- The fractal dimension of star-forming regions at different spatial scales in M33
- Molecular line intensities as measures of cloud masses - II. Conversion factors for specific galaxy types
- Nuclear Black Hole Formation in Clumpy Galaxies at High Redshift
- Physical conditions of molecular gas in the Circinus galaxy: Multi-J CO and CI 1-0 observations
- Dust-to-gas ratio, factor and CO-dark gas in the Galactic anticentre: an observational study
- Atomic carbon as a powerful tracer of molecular gas in the high-redshift Universe: perspectives for ALMA
- PHIBSS: Exploring the Dependence of the CO-H Conversion Factor on Total Mass Surface Density at
- The molecular gas mass of M33
- Tracing H2 column density with atomic carbon (CI) and CO isotopologues
Cited by in corpus (94)
- The Evolution of the Star-forming Interstellar Medium across Cosmic Time
- Tracing the total molecular gas in galaxies: [CII] and the CO-dark gas
- Photodissociation and X-Ray Dominated Regions
- A Survey of Atomic Carbon [C I] in High-redshift Main-Sequence Galaxies
- Impact of low-energy cosmic rays on star formation
- The ALMA Spectroscopic Survey in the HUDF: CO Excitation and Atomic Carbon in Star-Forming Galaxies at
- Radiative cooling rates, ion fractions, molecule abundances and line emissivities including self-shielding and both local and metagalactic radiation fields
- Tracing the formation of molecular clouds via [CII], [CI] and CO emission
- The properties of the interstellar medium of galaxies across time as traced by the neutral atomic carbon [CI]
- Dust, CO and [CI]: Cross-calibration of molecular gas mass tracers in metal-rich galaxies across cosmic time
- Physical Processes in Star Formation
- The art of modeling CO, [CI], and [CII] in cosmological galaxy formation models
- ALMA [CI] observations of NGC6240: a puzzling molecular outflow, and the role of outflows in the global factor of (U)LIRGs
- SILCC-Zoom: H and CO-dark gas in molecular clouds -- The impact of feedback and magnetic fields
- Giant galaxy growing from recycled gas: ALMA maps the circumgalactic molecular medium of the Spiderweb in [CI]
- The most distant, luminous, dusty star-forming galaxies: redshifts from NOEMA and ALMA spectral scans
- Deceptively cold dust in the massive starburst galaxy GN20 at
- Metallicity dependence of the H/H and C/C/CO distributions in a resolved self-regulating interstellar medium
- The EDGE-CALIFA Survey: Central molecular gas depletion in AGN host galaxies -- a smoking gun for quenching?
- New places and phases of CO-poor/CI-rich molecular gas in the Universe
- GMC Collisions as Triggers of Star Formation. V. Observational Signatures
- Photodissociation Region Diagnostics Across Galactic Environments
- Tracing Molecular Gas in z 6 Galaxies with [C]
- Spotting high-z molecular absorbers using neutral carbon: Results from a complete spectroscopic survey with the VLT
- CO line ratios in molecular clouds: the impact of environment
- The Physical Drivers and Observational Tracers of CO-to-H2 Conversion Factor Variations in Nearby Barred Galaxy Centers
- The Astrochemical Impact of Cosmic Rays in Protoclusters I: Molecular Cloud Chemistry
- Resolved neutral carbon emission in nearby galaxies: [CI] Lines as Total Molecular Gas Tracers
- The CO(3-2)/CO(1-0) luminosity line ratio in nearby star-forming galaxies and AGN from xCOLD GASS, BASS and SLUGS
- Planck's Dusty GEMS. VII. Atomic carbon and molecular gas in dusty starburst galaxies at z=2 to 4
- Dependence of on metallicity, intensity, and spatial scale in a self-regulated interstellar medium
- Synthetic observations of star formation and the interstellar medium
- Simulations of cosmic ray propagation
- Giant star-forming clumps?
- Dust continuum, CO, and [C I] 1-0 lines: self-consistent H2 mass estimates and the possibility of globally CO-dark galaxies at
- Starburst Energy Feedback Seen Through HCO/HOC Emission in NGC 253 from ALCHEMI
- The relationship between dust and [CI] at z=1 and beyond
- Non-Equilibrium Chemistry and Destruction of CO by X-ray Flares
- The subthermal excitation of the C{\sc i} lines in the molecular gas reservoirs of galaxies: its significance and potential utility
- Extreme conditions in the molecular gas of lensed star-forming galaxies at z~3
- PDFchem: A new fast method to determine ISM properties and infer environmental parameters using probability distributions
- Radio spectra and sizes of ALMA-identified submillimetre galaxies: evidence of age-related spectral curvature and cosmic ray diffusion?
- A cosmic stream of atomic carbon gas connected to a massive radio galaxy at redshift 3.8
- Simulating the atomic and molecular content of molecular clouds using probability distributions of physical parameters
- ALMA Observations of Atomic Carbon [C I] () and Low- CO Lines in the Starburst Galaxy NGC 1808
- Observational signatures of cosmic ray interactions in molecular clouds
- The Inception of Star Cluster Formation Revealed by [CII] Emission Around an Infrared Dark Cloud
- The impact of cosmic-ray attenuation on the carbon cycle emission in molecular clouds
- Submillimeter imaging of the Galactic Center starburst Sgr B2. Warm molecular, atomic, and ionized gas far from massive star-forming cores
- The cold circumgalactic environment of MAMMOTH-I: dynamically cold gas in the core of an Enormous Ly-alpha Nebula
- The Interstellar Medium and Star Formation of Galactic Disks. I. ISM and GMC properties with Diffuse FUV and Cosmic Ray Backgrounds
- Quenching by gas compression and consumption: A case study of a massive radio galaxy at z = 2.57
- The origin of the [CII]-deficit in a simulated dwarf galaxies starburst
- The cosmic ray ionisation and -ray budgets of star-forming galaxies
- The Carbon-to-H, CO-to-H Conversion Factors and Carbon Abundance on Kiloparsec Scales in Nearby Galaxies
- Observations of neutral carbon in 29 high-z lensed dusty star forming galaxies and the comparison of gas mass tracers
- HI-to-H Transitions in Dust-Free Interstellar Gas
- ALMA and MUSE observations reveal a quiescent multi-phase circumgalactic medium around the z~3.6 radio galaxy 4C 19.71
- Dependence of Chemical Abundance on the Cosmic Ray Ionization Rate in IC 348
- Transport of Protostellar Cosmic Rays in Turbulent Dense Cores
- SUNRISE: The rich molecular inventory of high-redshift dusty galaxies revealed by broadband spectral line surveys
- The Astrochemical Impact of Cosmic Rays in Protoclusters II: CI-to-H and CO-to-H Conversion Factors
- Physical conditions of the molecular gas in metal-poor galaxies
- The molecular gas resolved by ALMA in the low-metallicity dwarf merging galaxy Haro 11
- Abundance ratios of OH/CO and HCO+/CO as probes of the cosmic ray ionization rate in diffuse clouds
- CCAT-prime: Science with an Ultra-widefield Submillimeter Observatory at Cerro Chajnantor
- The fate of the interstellar medium in early-type galaxies. III. The mechanism of ISM removal and quenching of star formation
- Temperature spectra of interstellar dust grains heated by cosmic-rays II: dark cloud cores
- APEX at the QSO MUSEUM: molecular gas reservoirs associated with 3 quasars and their link to the extended Ly emission
- Factories of CO-dark gas: molecular clouds with limited star formation efficiencies by FUV feedback
- The cold molecular gas in z6 quasar host galaxies
- Global Correlations Between the Radio Continuum, Infrared and CO Emission in Dwarf Galaxies
- Molecular gas properties of Q1700-MD94: a massive, main-sequence galaxy at
- Revisited cold gas content with atomic carbon [C I] in z=2.5 protocluster galaxies
- A new analytic approach to infer the cosmic-ray ionization rate in hot molecular cores from HCO, NH, and CO observations
- Massive molecular gas reservoir around the central AGN in the CARLA J1103+3449 cluster at z=1.44
- CI and CO in Nearby Spiral Galaxies -- I. Line Ratio and Abundance Variations at ~ 200 pc Scales
- Metallicity dependence of the CO-to-H and the [CI]-to-H conversion factors in galaxies
- A Model for Protostellar Cluster Luminosities and the Impact on the CO-H Conversion Factor
- : Modeling a Universe of Molecular Line Luminosities in Hydrodynamical Simulations
- On the effects of UV photons/X-rays on the chemistry of the Sgr B2 cloud
- Physicochemical models: source-tailored or generic?
- A Herschel mapping of [C ii], [O i] and [O iii] lines from the circumnuclear region of M31
- Main Sequence to Starburst Transitioning Galaxies: Gamma-ray Burst Hosts at
- The unusual ISM in Blue and Dusty Gas Rich Galaxies (BADGRS)
- Cosmic-ray-driven enhancement of the C/CO abundance ratio in W51C
- Molecular ionization rates and ultracompact dark matter minihalos
- Unveiling the Main Sequence to Starburst Transition Region with a Sample of Intermediate Redshift Luminous Infrared Galaxies
- Deep kiloparsec view of the molecular gas in a massive star-forming galaxy at cosmic noon
- When did the initial mass function become bottom-heavy?
- Tight correlation of star formation with [Ci] and CO lines across cosmic time
- First detections of CO absorption in the Magellanic Clouds and direct measurement of the CO-to-H ratio
- Low star-formation activity and low gas content of quiescent galaxies at 3.5-4.0 constrained with ALMA
- Simulation of proton radiolysis of H2O and O2 ices with the Nautilus code